Recent interest in functionalized graphene has been motivated by the prospect of creating a two-dimensional semiconductor with a tunable band gap. Various approaches to band gap engineering have been made over the last decade, one of which is chemical functionalization. In this work, a predictive physical model of the self-assembly of halogenated carbene layers on graphene is suggested. Self-assembly of the adsorbed layer is found to be governed by a combination of the curvature of the graphene sheet, local distortions, as introduced by molecular adsorption, and short-range intermolecular repulsion. The thermodynamics of bidental covalent molecular adsorption and the resultant electronic structure are computed using density functional theor...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
Current studies addressing the engineering of charge carrier concentration and the electronic band g...
Graphene is foreseen to be the basis of future electronics owing to its ultra thin structure, extrem...
Recent interest in functionalized graphene has been motivated by the prospect of creating a two-dime...
Recent interest in functionalised graphene has been motivated by the prospect of creating a two-dime...
We report a first-principles study on tuning the electronic band gap of graphyne, consisting of two-...
In the present paper, we study the effects of functionalization of graphene with simple organic mole...
The effects of adsorbing simple aromatic molecules on the electronic structure of graphene were syst...
We have investigated the electronic properties of 1-, 2-, and 3-layer graphene upon surface adsorpti...
Graphene, a two-dimensional allotrope of carbon, has, since its discovery in 2004, taken the world o...
The adsorption of the alkane tetratetracontane (TTC, C44H90) on graphene induces the formation of a ...
Using van-der-Waals-corrected density functional theory calculations, we explore the possibility of ...
Phenyl radical (Ph.) adsorption on monolayer graphene sheets is used to investigate the band-gap man...
Carbon is one of the most versatile materials available to man, for hundreds of years the 3D forms o...
An isotropic compression of graphene is shown to induce a structural deformation on the basis of Den...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
Current studies addressing the engineering of charge carrier concentration and the electronic band g...
Graphene is foreseen to be the basis of future electronics owing to its ultra thin structure, extrem...
Recent interest in functionalized graphene has been motivated by the prospect of creating a two-dime...
Recent interest in functionalised graphene has been motivated by the prospect of creating a two-dime...
We report a first-principles study on tuning the electronic band gap of graphyne, consisting of two-...
In the present paper, we study the effects of functionalization of graphene with simple organic mole...
The effects of adsorbing simple aromatic molecules on the electronic structure of graphene were syst...
We have investigated the electronic properties of 1-, 2-, and 3-layer graphene upon surface adsorpti...
Graphene, a two-dimensional allotrope of carbon, has, since its discovery in 2004, taken the world o...
The adsorption of the alkane tetratetracontane (TTC, C44H90) on graphene induces the formation of a ...
Using van-der-Waals-corrected density functional theory calculations, we explore the possibility of ...
Phenyl radical (Ph.) adsorption on monolayer graphene sheets is used to investigate the band-gap man...
Carbon is one of the most versatile materials available to man, for hundreds of years the 3D forms o...
An isotropic compression of graphene is shown to induce a structural deformation on the basis of Den...
The electronic structure of the zero-gap two-dimensional graphene has a charge neutrality point exac...
Current studies addressing the engineering of charge carrier concentration and the electronic band g...
Graphene is foreseen to be the basis of future electronics owing to its ultra thin structure, extrem...